LM566C
LM566C is LM566C Voltage Controlled Oscillator manufactured by National Semiconductor.
Description
The LM566CN is a general purpose voltage controlled oscillator which may be used to generate square and triangular waves the frequency of which is a very linear function of a control voltage The frequency is also a function of an external resistor and capacitor The LM566CN is specified for operation over the 0 C to a 70 C temperature range
High temperature stability Excellent supply voltage rejection 10 to 1 frequency range with fixed capacitor Frequency programmable by means of current voltage resistor or capacitor
Applications
Y Y Y Y Y
Features
Wide supply voltage range 10V to 24V Very linear modulation characteristics
FM modulation Signal generation Function generation Frequency shift keying Tone generation
Connection Diagram
Dual-In-Line Package
Typical Application
1 k Hz and 10 k Hz TTL patible Voltage Controlled Oscillator
TL H 7854
- 2
Order Number LM566CN See NS Package Number N08E
TL H 7854
- 3
C1995 National Semiconductor Corporation
TL H 7854
RRD-B30M115 Printed in U S A
Absolute Maximum Ratings
If Military Aerospace specified devices are required please contact the National Semiconductor Sales Office Distributors for availability and specifications Power Supply Voltage Power Dissipation (Note 1) Operating Temperature Range LM566CN Lead Temperature (Soldering 10 sec ) 26V 1000 m W 0 C to a 70 C a 260 C
Electrical Characteristics VCC e 12V
Parameter Maximum Operating Frequency VCO Free-Running Frequency Input Voltage Range Pin 5 Average Temperature Coefficient of Operating Frequency Supply Voltage Rejection Input Impedance Pin 5 VCO Sensitivity FM Distortion Maximum Sweep Rate Sweep Range Output Impedance Pin 3 Pin 4 Square Wave Output Level Triangle Wave Output Level Square Wave Duty Cycle Square Wave Rise Time Square Wave Fall Time Triangle Wave Linearity RL1 e 10k RL2 e 10k 10- 20V
TA e 25 C AC Test Circuit LM566C Min Typ 1 Max MHz Units
Conditions R0 e 2k C0 e 2 7 p F CO e 1 5 n F RO e 20k f O e 10 k Hz
05 b 30
0...